Academic literature on the topic 'Сировина техногенна'
Create a spot-on reference in APA, MLA, Chicago, Harvard, and other styles
Consult the lists of relevant articles, books, theses, conference reports, and other scholarly sources on the topic 'Сировина техногенна.'
Next to every source in the list of references, there is an 'Add to bibliography' button. Press on it, and we will generate automatically the bibliographic reference to the chosen work in the citation style you need: APA, MLA, Harvard, Chicago, Vancouver, etc.
You can also download the full text of the academic publication as pdf and read online its abstract whenever available in the metadata.
Journal articles on the topic "Сировина техногенна"
Cherniak, L. P. "ХІМІЧНО СТІЙКА КЕРАМІКА З ВИКОРИСТАННЯМ ЧЕРВОНОГО ШЛАМУ." Кераміка: наука і життя, no. 1(26) (March 31, 2015): 35. http://dx.doi.org/10.26909/csl.1.2015.3.
Full textЧерняк, Лев, Наталья Дорогань, and Мария Аникина. "ИСПОЛЬЗОВАНИЕ КРАСНОГО ШЛАМА ДЛЯ ИЗГОТОВЛЕНИЯ МИНЕРАЛЬНОГО ВЯЖУЩЕГО МАТЕРИАЛА." Будівельні матеріали та вироби, no. 1-2(100) (August 27, 2019): 32–35. http://dx.doi.org/10.48076/2413-9890.2019-100-04.
Full textKorotkova, T. M., and N. G. Solomakha. "Особливості природного заростання техногенних екотопів на відвалах розкривних порід Новотроїцького родовища флюсової сировини." Forestry and Forest Melioration, no. 137 (April 28, 2021): 41–50. http://dx.doi.org/10.33220/1026-3365.137.2020.41.
Full textKindzera, D. P., V. M. Atamaniuk, Z. Ya Gnativ, and I. M. Mitin. "Рroduction of light fillers on the basis of technogenic raw materials." Chemistry, Technology and Application of Substances 4, no. 1 (June 1, 2021): 131–37. http://dx.doi.org/10.23939/ctas2021.01.131.
Full textКАСЬЯНЕНКО, Геннадій, and Станіслав МАЦАК. "ТЕХНОГЕННИЙ ФЛУОР У ҐРУНТАХ ТА ВОДОЙМАХ М. СУМИ." Проблеми хімії та сталого розвитку, no. 4 (January 19, 2022): 24–29. http://dx.doi.org/10.32782/pcsd-2021-4-4.
Full textМельник, В., О. Романашенко, М. Циганенко, О. Калюжний, В. Качанов, and М. Романашенко. "Застосування суміжних посівів для збалансування біологізації агроекосистеми України." Науковий журнал «Інженерія природокористування», no. 4(18) (February 11, 2021): 42–46. http://dx.doi.org/10.37700/enm.2020.4(18).42-46.
Full textVasylieva, N., I. Blayda, T. Vasylieva, V. Baranov, and I. Barba. "APPLICATIONS OF METHODS OF DISPERSION AND CLUSTER ANALYSIS TO COMPARE THE RESISTANCE OF ACIDOPHILIC CHEMOLITHOTROPHIC BACTERIA ISOLATED FROM DUMP PRODUCTS TO HEAVY METALS." Visnyk of Lviv University. Biological series, no. 81 (January 28, 2020): 111–21. http://dx.doi.org/10.30970/vlubs.2019.81.12.
Full textПисаренко, П. В., М. С. Самойлік, О. Ю. Диченко, Ю. А. Цьова, А. В. Подлєсний, and Д. М. Третякова. "КОНЦЕПТУАЛЬНІ НАПРЯМИ РЕГІОНАЛЬНОГО УПРАВЛІННЯ СФЕРОЮ ПОВОДЖЕННЯ З ТВЕРДИМИ ПОБУТОВИМИ ВІДХОДАМИ." Вісник Полтавської державної аграрної академії, no. 3 (September 24, 2021): 82–90. http://dx.doi.org/10.31210/visnyk2021.03.10.
Full textDissertations / Theses on the topic "Сировина техногенна"
Рикусова, Надія, Людмила Павлівна Щукіна, Олексій Шестопалов, and Анастасія Костіна. "Екотоксична та мінералогічна характеристика бурових шламів Полтавського регіону." Thesis, Львівський національний університет ім. Івана Франка, 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/42420.
Full textЛісюткіна, Марія Юріївна. "Ресурсоощадна технологія хімічно та термічно стійкої кераміки на основі композицій системи (Mg, Са)O – Al₂O₃ – TiO₂ – SiO₂." Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/37655.
Full textThe dissertation is devoted to development of resource and energy saving techno-logy of chemically stable and heat-resistant ceramics based on domestic alter-native natural and technogenic raw materials. The results of theoretical studies of the possible interaction of the main types of ceramics with aggressive environment with different pH at the design of the composition of chemically stable and heat-resistant ceramics with reduced synthesis temperature are used. The most inert compounds in relation to acids and alkalis were determined, as a result, a phase-forming system (Mg, Са)O – Al2O3 – TiO2 – SiO2 was chosen for physicochemical research, based on the compositions belonging to the elementary tetrahedron A3S2 – CAS2 –AT–S and A3S2 – M2A2S5 – AT – S. In addition, the composition of masses of chemically stable and heat-resistant ceramics with a burning temperature of 1250 °C has developed. It has been established that for the intensification of sintering and phase formation of chemically stable and thermally stable ceramics at low firing temperature it is necessary to use complex fluxes (including PbO) and mineralizing additives (containing MgO and Fe2O3). The choice of raw materials for the manufacture of chemically stable and heat-resistant ceramics was been grounded based on studies on the composition and properties of the pyrophyllite shale of the Ovrutskogo deposit and waste technogenic of ferrotitanium production. Physico-chemical regularities of its formation were established and mathe-matical models of dependencies of the properties of the developed ceramics from the com-position of masses were obtained. The compounds and technological parameters of the production of chemically stable and heat-resistant ceramics with a complex of high phys-ico-mechanical and chemical properties was been developed: containing of tialite (W = 0.25 %, σbend. = 23 MPa, σcompr. = 100 MPa, AcS > 99.32 %, AlS > 99.99 %, CTE = 3.0·10-6 deg-1) were developed.
Лісюткіна, Марія Юріївна. "Ресурсоощадна технологія хімічно та термічно стійкої кераміки на основі композицій системи (Mg, Са)O – Al₂O₃ – TiO₂ – SiO₂." Thesis, НТУ "ХПІ", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/37654.
Full textThe dissertation is devoted to development of resource and energy saving techno-logy of chemically stable and heat-resistant ceramics based on domestic alter-native natural and technogenic raw materials. The results of theoretical studies of the possible interaction of the main types of ceramics with aggressive environment with different pH at the design of the composition of chemically stable and heat-resistant ceramics with reduced synthesis temperature are used. The most inert compounds in relation to acids and alkalis were determined, as a result, a phase-forming system (Mg, Са)O – Al2O3 – TiO2 – SiO2 was chosen for physicochemical research, based on the compositions belonging to the elementary tetrahedron A3S2 – CAS2 –AT–S and A3S2 – M2A2S5 – AT – S. In addition, the composition of masses of chemically stable and heat-resistant ceramics with a burning temperature of 1250 °C has developed. It has been established that for the intensification of sintering and phase formation of chemically stable and thermally stable ceramics at low firing temperature it is necessary to use complex fluxes (including PbO) and mineralizing additives (containing MgO and Fe2O3). The choice of raw materials for the manufacture of chemically stable and heat-resistant ceramics was been grounded based on studies on the composition and properties of the pyrophyllite shale of the Ovrutskogo deposit and waste technogenic of ferrotitanium production. Physico-chemical regularities of its formation were established and mathe-matical models of dependencies of the properties of the developed ceramics from the com-position of masses were obtained. The compounds and technological parameters of the production of chemically stable and heat-resistant ceramics with a complex of high phys-ico-mechanical and chemical properties was been developed: containing of tialite (W = 0.25 %, σbend. = 23 MPa, σcompr. = 100 MPa, AcS > 99.32 %, AlS > 99.99 %, CTE = 3.0·10-6 deg-1) were developed.
Челядин, Л. І. "Наукові засади ресурсозберігаючих технологій та устаткування підвищення екологічної безпеки промислових об'єктів Прикарпаття." Thesis, Івано-Франківський національний технічний університет нафти і газу, 2011. http://elar.nung.edu.ua/handle/123456789/1911.
Full textThe analysis of the amount and waste composition of production (mostly solids) is given in the thesis as quality (nearly 30 billion tonus) and their toxicity contaminate the environment. The most of hard tehnogenic raw material appears in power (slag of TPS), mining (sludge of the coal mining) industries and water-purification (sludge of oil production, oil-processing, galvanic and electronic productions). To reduce the impact of reasous of ecologic danger the series of different investigations in ecological and technological aspects of their utilization were carried out. On the basis of analysis of the well-known technologies of processing wastes (tehnogenic raw material) their shortcoming is set and new directions and technologies of utilization of tehnogenic raw material are developed in carbon-mineral material (patents № 55581A, 5247) and equipment (patent 5740, 27668), which are ecologically safe and low power consuming. Materials which appear during utilization are porous and contain on the surface ferrites of transition metals that show sorption and catalytic properties, and also can be used as filtering materials at cleaning gases and liquids as well as thermoinsulated ones. Created carbon-mineral materials have been factually approbated in technologies of gas and liquids cleaning and converting hydrocarbons. The results of thesis investigations and test reports confirm effective cleaning of gases and liquids from harmful components, and also catalytic properties of carbon-mineral materials in the processes of hydrocarbons transformation. The suggested methods of technogennic wastes utilization, sewage purification and improved devices enable to reduce the quantity of technogennic harmful components which will not be emitted into environment, thus it will increase the level of ecological safety of industrial objects.
Постолатій, М. О., and М. С. Лемешев. "Техногенні промислові відходи виробництва – сировина для виготовлення будівельних виробів." Thesis, ВНТУ, 2018. http://ir.lib.vntu.edu.ua//handle/123456789/23729.
Full textAn analytical review of the use of industrial man-made waste ash - removals and red mud for the manufacture of construction products was carried out in this work. It was established that the use of fly ash and red bauxite slime in the technologies of building materials production improves the physico-chemical and rheological properties of the concrete mix.
Щукіна, Людмила Павлівна, Михайло Іванович Рищенко, Ярослав Олегович Галушка, Станіслав Леонідович Лігезін, and Лариса Олександрівна Міхеєнко. "Комплексна обробка інформації щодо техногенної сировини для керамічних технологій." Thesis, Симфонія форте, 2017. http://repository.kpi.kharkov.ua/handle/KhPI-Press/44721.
Full textConference papers on the topic "Сировина техногенна"
Чиркіна, Марина. "РАДІАЦІЙНА ОЦІНКА ТЕХНОГЕННОЇ СИРОВИНИ, ЩО ВИКОРИСТОВУЄТЬСЯ У БУДІВЕЛЬНІЙ ГАЛУЗІ." In TENDENZE ATTUALI DELLA MODERNA RICERCA SCIENTIFICA. European Scientific Platform, 2020. http://dx.doi.org/10.36074/05.06.2020.v3.47.
Full textReports on the topic "Сировина техногенна"
Паранько, Ігор Степанович. Антропогенна геологія – альтернатива екологічній геології. КДПУ, 2008. http://dx.doi.org/10.31812/123456789/5234.
Full textПаранько, Ігор Степанович, Валерій Дмитрович Євтєхов, and Є. В. Євтехов. Техногенні родовища – невід'ємна складова антропогенних ландшафтів Криворіжжя. КДПУ, 2005. http://dx.doi.org/10.31812/123456789/5046.
Full text